Examples of 'sugar moiety' in a sentence

Meaning of "sugar moiety"

sugar moiety - In chemistry, a sugar moiety refers to the part of a molecule that is derived from a sugar compound. It is commonly found in organic compounds and plays a crucial role in various biological processes

How to use "sugar moiety" in a sentence

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sugar moiety
The sugar moiety may be an aldohexose or aldopentose.
The nucleotide analogs are not limited to a specific sugar moiety.
The sugar moiety can also be a hexose.
The molecule can have a ribose or deoxyribose sugar moiety.
The sugar moiety of a nucleotide is a ribose or a deoxyrihose.
Nucleotide analogs can also include modifications of the sugar moiety.
The sugar moiety of a nucleotide is a ribose or a deoxyribose.
The nucleotide or nucleoside molecule can have a ribose or deoxyribose sugar moiety.
The sugar moiety is in turn linked to a phosphate group.
The chemical modifications can be located on the sugar moiety of the nucleotide.
The sugar moiety is also functionalized with a modifying group.
In the vancomycin aglycone the two units sugar moiety is substituted by a hydrogen atom.
The sugar moiety might be modified with pentoses or hexoses.
The present invention also provides nucleotide sugars in which the sugar moiety is modified.
The sugar moiety can also be functionalized with a modifying group.

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A first category are real nucleoside analogues since they contain a nucleobase and a sugar moiety.
The sugar moiety is deprotected and the chromogenic enzyme substrate is purified.
This DNA region was able to complement a mutation impairing biosynthesis of the sugar moiety.
The sugar moiety may be either a ribose or a deoxyribose moiety or an analog thereof.
Sugar Modifications Oligonucleotides can also contain nucleotides with modified sugar moieties or sugar moiety analogs.
The sugar moiety may be linked to the sterol moiety vía a glycosidic bond.
Finally, the ribofuranosyl sugar moiety is converted to arabinofuranosyl.
The sugar moiety is not required for the full spectrum of biological activities.
In certain embodiments, the modified sugar moiety is a cEt.
The sugar moiety of the modified sugar is preferably selected from nucleotide sugars.
In some embodiments, the modified sugar moiety is a cEt.
A deoxyribonucleotide whose sugar moiety is deoxyribofuranosyl can be used as a member constituting DNA.
Such bases are generally located at the 1 ' position of a nucleotide sugar moiety.
A ribonucleotide whose sugar moiety is ribofuranosyl can be used as a member constituting RNA.
Glycosylated hemoglobins ( glycohemoglobins ) are hemoglobins that are covalently bound to a sugar moiety.
Alternatively, the sugar moiety may be a ketohexose or ketopentose.
Saponins are a class of compounds, each consisting of a sapogenin portion and a sugar moiety.
The sugar moiety can be acylated at the carbon 6 position.
Modified nucleosides comprise a modified sugar moiety and / or a modified nucleobase.
The sugar moiety is composed of glucose, xylose and even arabinose.
Such modification may be at the sugar moiety and / or at the nucleobase.
In some embodiments, a nucleoside is a compound comprising a nucleobase moiety and a sugar moiety.
In certain embodiments, the bicyclic sugar moiety comprises 2 linked biradical groups.
The sugar moiety of the nucleoside can be a non-naturally occurring sugar moiety.
In certain instances, each nucleoside of the antisense oligonucleotide comprises a modified sugar moiety.
A ribonucleotide contains a ribose as a sugar moiety, while a deoxyribonucleotide contains a deoxyribose as a sugar moiety.
In certain embodiments, each nucleoside of the antisense oligonucleotide comprises a modified sugar moiety.
In some embodiments, the sugar moiety of the nucleoside can be a non-naturally occurring sugar moiety.
A nucleotide is a molecule that contains a base moiety, a sugar moiety and a phosphate moiety.
As is well-known, a sugar moiety is capable of interacting directly with a strand of DNA.
The heterocyclic nitrogenous bases are generally located at the 1 ' position of a nucleoside sugar moiety.
These modifications include base ring modifications, sugar moiety modifications, and sugar-phosphate backbone modifications.
In certain embodiments, at least one nucleoside of the antisense oligonucleotide comprises a modified sugar moiety.
In certain instances, the nucleosides comprising a modified sugar moiety all comprise the same sugar modification.
Examples include modifications to the phosphate backbone, the internucleotide linkage, or to the sugar moiety.

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